Hamming Star-Convexity Packing in Information Storage

<p>Abstract</p> <p>A major puzzle in neural networks is understanding the information encoding principles that implement the functions of the brain systems. Population coding in neurons and plastic changes in synapses are two important subjects in attempts to explore such principle...

Full description

Bibliographic Details
Main Authors: Shih Mau-Hsiang, Tsai Feng-Sheng
Format: Article
Language:English
Published: SpringerOpen 2011-01-01
Series:Fixed Point Theory and Applications
Online Access:http://www.fixedpointtheoryandapplications.com/content/2011/615274
id doaj-81f7c854be94488087501f7f9f664e09
record_format Article
spelling doaj-81f7c854be94488087501f7f9f664e092020-11-24T20:57:55ZengSpringerOpenFixed Point Theory and Applications1687-18201687-18122011-01-0120111615274Hamming Star-Convexity Packing in Information StorageShih Mau-HsiangTsai Feng-Sheng<p>Abstract</p> <p>A major puzzle in neural networks is understanding the information encoding principles that implement the functions of the brain systems. Population coding in neurons and plastic changes in synapses are two important subjects in attempts to explore such principles. This forms the basis of modern theory of neuroscience concerning self-organization and associative memory. Here we wish to suggest an information storage scheme based on the dynamics of evolutionary neural networks, essentially reflecting the meta-complication of the dynamical changes of neurons as well as plastic changes of synapses. The information storage scheme may lead to the development of a complete description of all the equilibrium states (fixed points) of Hopfield networks, a space-filling network that weaves the intricate structure of Hamming star-convexity, and a plasticity regime that encodes information based on algorithmic Hebbian synaptic plasticity.</p>http://www.fixedpointtheoryandapplications.com/content/2011/615274
collection DOAJ
language English
format Article
sources DOAJ
author Shih Mau-Hsiang
Tsai Feng-Sheng
spellingShingle Shih Mau-Hsiang
Tsai Feng-Sheng
Hamming Star-Convexity Packing in Information Storage
Fixed Point Theory and Applications
author_facet Shih Mau-Hsiang
Tsai Feng-Sheng
author_sort Shih Mau-Hsiang
title Hamming Star-Convexity Packing in Information Storage
title_short Hamming Star-Convexity Packing in Information Storage
title_full Hamming Star-Convexity Packing in Information Storage
title_fullStr Hamming Star-Convexity Packing in Information Storage
title_full_unstemmed Hamming Star-Convexity Packing in Information Storage
title_sort hamming star-convexity packing in information storage
publisher SpringerOpen
series Fixed Point Theory and Applications
issn 1687-1820
1687-1812
publishDate 2011-01-01
description <p>Abstract</p> <p>A major puzzle in neural networks is understanding the information encoding principles that implement the functions of the brain systems. Population coding in neurons and plastic changes in synapses are two important subjects in attempts to explore such principles. This forms the basis of modern theory of neuroscience concerning self-organization and associative memory. Here we wish to suggest an information storage scheme based on the dynamics of evolutionary neural networks, essentially reflecting the meta-complication of the dynamical changes of neurons as well as plastic changes of synapses. The information storage scheme may lead to the development of a complete description of all the equilibrium states (fixed points) of Hopfield networks, a space-filling network that weaves the intricate structure of Hamming star-convexity, and a plasticity regime that encodes information based on algorithmic Hebbian synaptic plasticity.</p>
url http://www.fixedpointtheoryandapplications.com/content/2011/615274
work_keys_str_mv AT shihmauhsiang hammingstarconvexitypackingininformationstorage
AT tsaifengsheng hammingstarconvexitypackingininformationstorage
_version_ 1716787190164357120